Claims
- 1. A flame retardant polyurethane foam formed from a composition comprising
an organic polyisocyanate component, an active hydrogen-containing component substantially reactive with the polyisocyanate to form a polyurethane, wherein the viscosity of the active hydrogen-containing component is less than about 500 cP at room temperature; a surfactant; a catalyst having substantial catalytic activity in the curing of said mixture; and a flame retarding composition comprising
an antimony-based compound, a halogenated, active hydrogen-containing component reactive with the polyisocyanate component, and a solid, halogenated flame retarding agent, wherein the molar ratio of total halogen to antimony is about 2.0:1 to about 5.0:1, and further wherein the total composition comprises at least about 12 weight percent halogen.
- 2. The foam of claim 1, wherein the viscosity of the active hydrogen-containing component is less than about 300 cP at room temperature.
- 3. The foam of claim 1, wherein the viscosity at room temperature of a mixture of the polyisocyanate, active hydrogen-containing component, surfactant, flame retardant composition, and catalyst is less than about 8000 cP at room temperature.
- 4. The foam of claim 1, wherein the antimony-based compound is antimony trioxide.
- 5. The foam of claim 1, wherein the halogenated, active hydrogen-containing component is a brominated polyol.
- 6. The foam of claim 1, wherein the composition is low VOC.
- 7. The foam of claim 6, wherein the polyisocyanate, active hydrogen-containing component, surfactant, flame retardant composition, and catalyst are each low VOC.
- 8. The foam of claim 1, wherein the molar ratio of total halogen to antimony is about 2.5:1 to about 4.5:1.
- 9. The foam of claim 1 having a UL 94 rating of V-0, V-1, HF1 or HBF.
- 10. The foam of claim 9, wherein the foam has a thickness of less than about one-half inch and a density of about 10 to about 65 pcf.
- 11. The foam of claim 1 having a UL 94 rating of V-0 and HFB, wherein the foam has thickness of about 12 to about 500 mils and a density of about 12 to about 30 pcf.
- 12. The foam of claim 1 having a 70° C. compression set of less than about 10% after 50% compression for 22 hours, a compressive force deflection of less than about 30 psi, and a tear strength greater than about 5 pli.
- 13. The foam of claim 1 having a 70° C. compression set of less than about 10% after 25% compression for 22 hours, a compressive force deflection of greater than about 50 psi, and a tear strength greater than about 5 pli.
- 14. An article of manufacture comprising the foam of claim 1.
- 15. A gasket comprising the foam of claim 1.
- 16. A flame retardant polyurethane elastomer formed from a composition comprising
an organic polyisocyanate component an active hydrogen-containing component substantially reactive with the polyisocyanate to form a polyurethane wherein the viscosity of the active hydrogen-containing component is less than about 500 cP at room temperature; a catalyst having substantial catalytic activity in the curing of said mixture; and a flame retarding composition comprising
an antimony-based compound, a halogenated, active hydrogen-containing component reactive with the polyisocyanate component, and a solid, halogenated flame retarding agent, wherein the molar ratio of total halogen to antimony is from about 2.0:1 to about 5.0:1.
- 17. The elastomer of claim 16, wherein the molar ratio of halogen to antimony is about 3.0:1.
- 18. The foam of claim 16, wherein the composition is low VOC.
- 19. The foam of claim 18, wherein the polyisocyanate, active hydrogen-containing component, surfactant, flame retardant composition, and catalyst are each low VOC.
- 20. A polyurethane foam formed from a composition comprising
an organic polyisocyanate component an active hydrogen-containing component substantially reactive with the polyisocyanate to form a polyurethane, wherein the active hydrogen containing component has a viscosity at room temperature of less than or equal to about 500 cP. a catalyst having substantial catalytic activity in the curing of said mixture; a surfactant; and a flame retardant composition comprising a halogenated active hydrogen-containing agent.
- 21. The foam of claim 20, wherein the viscosity of the active hydrogen-containing component is less than about 300 cP at room temperature.
- 22. The foam of claim 20, wherein the viscosity at room temperature of a mixture of the polyisocyanate, active hydrogen-containing component, surfactant, flame retardant composition, and catalyst is less than about 8000 cP at room temperature.
- 23. The foam of claim 20, wherein the halogenated, active hydrogen-containing component is a brominated polyol.
- 24. The foam of claim 20 having a UL 94 rating of V-0, V-1, HF1, or HBF.
- 25. The foam of claim 20, wherein the composition is low VOC.
- 26. The foam of claim 20, wherein the polyisocyanate, active hydrogen-containing component, surfactant, flame retardant composition, and catalyst are each low VOC.
- 27. An article of manufacture formed from the composition of claim 20.
- 28. A method for the manufacture of a flame retardant polyurethane foam, comprising substantially uniformly dispersing inert gas throughout a mixture comprising
an organic polyisocyanate component, an active hydrogen-containing component substantially reactive with the isocyanate to form a polyurethane, wherein the active hydrogen-containing component has a viscosity at room temperature of less than or equal to about 500 cP; a surfactant; a catalyst having substantial catalytic activity in the curing of said mixture; and a flame retarding composition comprising
an antimony-based compound, a halogenated, active hydrogen-containing component reactive with the polyisocyanate component, and a solid, halogenated flame retarding composition, wherein the ratio of total halogen to antimony is about 2.0:1 to about 5.0:1, to form a heat curable froth which is substantially structurally and chemically stable, but workable at ambient conditions; and curing said froth to form a cured foam.
- 29. The method of claim 24, wherein the viscosity at room temperature of the mixture is less than about 8000 cP at room temperature.
- 30. A method for the manufacture of a polyurethane foam, comprising substantially uniformly dispersing inert gas throughout a mixture comprising
a low VOC organic polyisocyanate component, a low VOC active hydrogen-containing component substantially reactive with the polyisocyanate to form a polyurethane, wherein the active hydrogen-containing component has a viscosity at room temperature of less than or equal to about 500 cP; a low VOC surfactant; a low VOC catalyst having substantial catalytic activity in the curing of said mixture; and a low VOC flame retardant composition comprising a halogenated active hydrogen-containing component, to form a heat curable froth which is substantially structurally and chemically stable, but workable at ambient conditions; and curing said froth to form a cured foam.
- 31. The method of claim 26, wherein the viscosity at room temperature of the mixture is less than about 8000 cP at room temperature.
- 32. The method of claim 26, wherein the halogenated active hydrogen-containing component is a brominated polyol.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Ser. No. 60/259,273, filed Dec. 29, 2000, the entire contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60259273 |
Dec 2000 |
US |